Bioengineer iconBioengineerSep 14, 2026

Polarization Superjunctions Push Gallium Nitride Power Transistors Toward Their Theoretical Limits

From electric vehicles to data centers, grid infrastructure to fast chargers, the world's appetite for converting and controlling electrical energy has never been greater, and the transistors that do this work sit at the heart of a quiet but relentless performance race.

Polarization Superjunctions Push Gallium Nitride Power Transistors Toward Their Theoretical Limits

Share this story

Send the public story page.

Useful takeaways from this story.

From electric vehicles to data centers, grid infrastructure to fast chargers, the world's appetite for converting and controlling electrical energy has never been greater, and the transistors that do this...

Building the complete brief

The page is ready to read now. The fuller skim-friendly version will appear here automatically.

The useful part

From electric vehicles to data centers, grid infrastructure to fast chargers, the world's appetite for converting and controlling electrical energy has never been greater, and the transistors that do this work sit at the heart of a quiet but relentless performance race.

How it works

  • From electric vehicles to data centers, grid infrastructure to fast chargers, the world's appetite for converting and controlling electrical energy has never been greater, and the transistors that do this...

Keep reading in the app

Open the app view to save this story, compare related coverage, and continue from the same source.

Open in app